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An experimental approach to the evaluation of the biopersistence of respirable synthetic fibers and minerals
- Source :
- Environmental Health Perspectives
- Publication Year :
- 1994
-
Abstract
- The biopersistence of fibers and minerals in the respiratory tract is an important parameter in the toxicity of those materials. The biopersistence of respirable synthetic fibers and minerals in man can be most closely evaluated in an animal model. While acellular and in vitro systems are important for initial evaluation of solubility and durability, they cannot simulate the dynamics of inhalation deposition and clearance and the subsequent systemic reaction to fibers and minerals that occurs in the animal. To evaluate the biopersistence of synthetic fibers, male rats were exposed to a well defined rat respirable aerosol of man-made vitreous fibers (MMVF), 6 hr/day for 5 days. Following exposure, subgroups were sacrificed at intervals ranging from 1 hr to 52 weeks. Following sacrifice, the lungs were removed, weighed, and immediately frozen at 20 degrees C for subsequent digestion by low temperature plasma ashing. The number, size distribution, and chemical composition of the fibers in the aerosol and lung were determined. With this animal model the role of biopersistence in altering the geometry and clearance of fibers can be systematically evaluated. The model also can be applied for the evaluation of the biopersistence of nonfibrous minerals.
- Subjects :
- Male
Time Factors
Health, Toxicology and Mutagenesis
Toxicology
Animal model
Air pollutants
Male rats
Animals
Particle Size
Air Pollutants
Minerals
Inhalation
Chemistry
Radiochemistry
Public Health, Environmental and Occupational Health
Low temperature plasma
Asbestos
Dust
Rats, Inbred F344
Rats
Systemic reaction
Disease Models, Animal
Synthetic fiber
Logistic Models
Ashing
Evaluation Studies as Topic
Research Article
Subjects
Details
- ISSN :
- 00916765
- Volume :
- 102
- Database :
- OpenAIRE
- Journal :
- Environmental health perspectives
- Accession number :
- edsair.doi.dedup.....3d40b0d53f74d04f4ce549e993d59d86